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Fracture of laser powder bed fusion additively manufactured Ti-6Al-4V under multiaxial loading: Calibration and comparison of fracture models

机译:激光粉床融合的骨折在多轴加载下加剧制造了Ti-6Al-4V:校准和裂缝模型的比较

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摘要

The fracture behavior of laser powder bed fusion (L-PBF) additively manufactured Ti-6Al-4V alloy manufactured in two orientations was investigated using a combined experimental and computational simulation approach. To quantify the effect of stress state on fracture of L-PBF Ti-6Al-4V, mechanical tests subjecting the material to seven distinct stress states were performed. For each test performed, computational simulations were used to determine the evolution of plastic strain and the stress state parameters stress triaxiality and Lode angle parameter up to fracture. Six existing fracture criteria were calibrated, and their ability to capture and/or predict the fracture behavior over a wide range of stress states was evaluated. It was determined that fracture models that explicitly take into account the effects of both the stress triaxiality and Lode angle parameter more accurately captured the multiaxial failure behavior of L-PBF Ti-6Al-4V compared to models that consider no stress state-dependence or only a dependence on stress triaxiality. Additionally, samples loaded in the vertical build direction had a higher ductility than corresponding samples loaded perpendicular to the vertical build direction. The stress state-dependent fracture behavior of L-PBF Ti-6Al-4V quantified in this study highlights the importance of experimentally measuring the fracture behavior of this material under a range of stress states that could be accessed during service, and defining appropriate models to prevent failure in components.
机译:使用组合的实验和计算模拟方法研究了激光粉床融合(L-PBF)的骨折性能加上两种方向制造的Ti-6Al-4V合金。为了量化应力状态对L-PBF Ti-6AL-4V的骨折的影响,进行将材料进行到七个不同应力状态的机械测试。对于所执行的每次测试,计算模拟用于确定塑性应变的演变和应力状态参数应力三轴性和典型角参数直至裂缝。校准了六种现有的骨折标准,并评估了它们在广泛的压力状态下捕获和/或预测裂缝行为的能力。确定了明确考虑了应力三轴性和典型角参数的效果的裂缝模型更准确地捕获L-PBF TI-6AL-4V的多轴故障行为与考虑没有应力状态依赖的模型对压力三轴性的依赖性。另外,在垂直构建方向上的样品具有比垂直构建方向垂直于垂直构建方向的相应样本的延展性更高的延展性。本研究中量化的L-PBF TI-6AL-4V的应力状态依赖性骨折行为凸显了实验地测量在服务期间可以访问的压力状态下这种材料的裂缝行为的重要性,并将适当的模型定义为防止组件失败。

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